Determine the bond angle for SiO2, BF3, CFCl3, H2CS, CBr4, H2CO, SC2, HB3.

the question ask is to Express your answer using three significant figures...???

thank you!

Answers

Answer 1

The bond angle for SiO2 is 120 degrees. The bond angle for BF3 is 120 degrees. The bond angle for CFCl3 is 120 degrees. The bond angle for H2CS is 120 degrees

Bond angle is defined as the relationship between two bonds, or the angle among two orbitals in a complex molecule or ion that contain bonding electron pairs. It is determined by calculating using a spectroscopic method and measured in degrees. The bond lengths in a molecule is the angle formed by three connected nuclei. Electron domains have distinctive angles and structures. A central atom with two electron density regions, for example, is regarded linear with an angle of 180°. More complex structures have multiple angles. Valence bond model says a bent geometry for the molecule of water with a bond angle of 90° because the 2 2p orbitals are at right angles to each other.

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Related Questions

What’s the correct sorting function to list Colors in alphabetical order (A to Z)? What value would be returned based on the formula in Cell A49? A B 29 Color Number 30 Red 100 31 Orange 112 32 Yellow 90 33 Green 85 34 Blue 120 Image not displaying? ASCENDING DESCENDING EQUAL TO A TO Z А 43 npab 44 npce 45 npfo 46 npbb 47 norp 48 49 =COUNTIF(A43:A47,"NP*") Image not displaying? 0 1 O 2 03 04 05

Answers

The correct sorting function to list Colors in alphabetical order is Ascending.

The value would be returned based on the formula in Cell A49 is 4.

What is the function?

A function is simply the code that one can use over and over again, rather than writing it out multiple times. In this case, it'll be illustrated in an ascending order.

Also, the formula: =COUNTIF(range;"*"). Range is defined cell range where you want to count the text in Excel and wildcard * is criteria for all text occurrences in the defined range.

The answer is 4, there were four instances of Np in the given range of five cells.

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What are Scope 2 emissions examples?

Answers

Examples of scope 2 emission are, the electricity and natural gas that is purchased from the local power utility and energy consumption that purchased from the utility.

The Scope 2 emissions are the indirect emissions from the generation of purchased energy from a utility provider. All GHG emissions released in the atmosphere from the consumption of purchased electricity, steam, heat and cooling. For most organizations, electricity will be the unique source of scope 2 emissions. Scope 2 covers the electricity consumed by the end user. We can use the simple term “buy” for the scope 2 emission because the organization typically buys energy to run its operations. This emissions come from purchased electricity, steam, heating, or cooling.

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What is everything to know about chemical bonding?

Answers

Explains other concepts such as molecules and reactions.

Explanation: Bond parameters, covalent compounds, hybridisation, hydrogen bonding, ionic or electrical ent compounds, and resonance structures

How do you know if sanitizer is too strong or too weak?

Answers

If sanitizer is added to the water, it won't be enough to adequately eliminate the microorganisms that cause foodborne disease. If there is an excessive amount of sanitizer added to the water, it may dry on dining tables and kitchen countertops.

How should one go about figuring out whether a sanitizer is too strong or too weak?

Using test strips, verify that the sanitizer is neither either too strong or too weak. The sanitising combination should only receive the precise amount of water.

How can you tell if the concentration of the cleaning solution is correct?

Over time, a chlorine bleach sanitising solution starts to lose part of its effectiveness. The sanitising solution must therefore be evaluated using test strips.

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a chemist wants to mix a 70% saline solution with a 8 liters of a 25% saline solution to create a solution with 40% salt. how many liters of the 70% solution does she need? (saline is a mixture of salt and water)

Answers

4 liters of the 70% solution are required by the chemist.

briefly:-

8 liters of saline solution divided by 25%

Saline solution at 25% = 0.25 x 8 = 2 liters

Let there be x liters of saline solution at 70%.

Salt = 8 plus x

40% of salt is equal to 25% of saline solution plus 70% of saline solution.

2 + (70/100)x = (40/100)(8 + x)

2 + 0.7x = 0.4(8 + x)

2 + 0.7x = 3.2 + 0.4x

assemble similar terms

0.7x - 0.4x = 3.2 - 20.3

x = 1.2

x = 1.2 / 0.3

x = 4

4 liters of the 70% solution are required by the chemist.

How can the volume of a dilution be determined?

The following equation can be used to determine the volume or concentration of a concentrated or diluted solution: M1V1 = M2V2.

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If you rewrite the following word equation as a balanced chemical equation, what will the coefficient and symbol for fluorine be? nitrogen trifluoride = nitrogen + fluorine.

Answers

If the given word equation is rewritten as a balanced chemical equation, the coefficient for fluorine will be 3 and the symbol for fluorine will be F.

A balanced chemical equation is one in which the number of atoms of each element on the left side of the equation is equal to the number of atoms of each element on the right side of the equation. In the case of the given equation, the balanced chemical equation would be:

N2 + 3F2 → 2NF3

In this equation, the coefficient for fluorine (F2) would be 3 and the symbol for fluorine would be F. This means that there are three molecules of fluorine present in the reaction, and the symbol for fluorine is F.

In summary, if the given word equation is rewritten as a balanced chemical equation, the coefficient for fluorine will be 3 and the symbol for fluorine will be F.

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a sample of a pure, gaseous hydrocarbon is introduced into a previously evacuated rigid 1.00l vessel. the pressure of the gas is

Answers

The pressure of a sample of pure, gaseous hydrocarbon introduced into a previously evacuated rigid 1.00L vessel will be 0.00 atm.

The sample of gas is pure, so the pressure will depend only on the number of molecules in the vessel and the temperature. This can be calculated using the Ideal Gas Law, which states that ,

PV=nRT.

The term n is the number of moles of gas, R is the gas constant (8.314 J/(K⋅mol)), and T is the temperature in Kelvin.

Therefore, the pressure can be calculated as:

P = nRT/V

Where P is the pressure in atm, V is the volume of the vessel in liters, and n and T are as described above.

Since the sample of hydrocarbon is pure, the number of moles (n) can be calculated from the mass of the sample. Assuming the sample is introduced into the vessel at room temperature (25°C = 298K), the pressure of the gas can be calculated as:

P = (m/M)(8.314 J/(K⋅mol))(298 K)/1.00L

Where m is the mass of the sample and M is the molar mass of the hydrocarbon.

Therefore, the pressure of a sample of pure, gaseous hydrocarbon introduced into a previously evacuated rigid 1.00L vessel will be 0.00 atm.

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calculate the ksp for silver sulfate if the solubility of ag2so4 in pure water is 4.5 g/l.

Answers

The ksp for silver sulfate if the solubility of ag2so4 in pure water is 4.5 g/l is 1.2x10-5.

The Ksp is the solubility product, which is the product of the ions increased to their coefficients. This is based on the chemical equation's mole ratio. The stoichiometry of the dissolving reaction influences the relationship between solubility and solubility product constant. When two ionic compounds share an ion, the solubility of a sparingly soluble ionic material is considerably reduced in a solution of another ionic molecule.

The equilibrium constant for the dissolving of a solid material into an aqueous solution is the solubility product constant. It's represented by the symbol Ksp. The solubility product is a type of equilibrium constant whose value varies with temperature.

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What happens if an element has 3 valence electrons?

Answers

Answer:

If an element has 3 valence electrons, it means that it can form chemical bonds with other atoms by sharing or transferring those 3 valence electrons. The resulting compound will have a chemical formula and properties that depend on the specific elements involved in the bonding and the arrangement of the atoms in the compound. Some elements with 3 valence electrons include boron (B), aluminum (Al), and phosphorus (P). These elements are commonly found in compounds such as borax (Na2B4O7), alum (KAl(SO4)2), and phosphoric acid (H3PO4), respectively.

Classify the following solvents as either protic or aprotic solvents.

Answers

The protic solvents include NH3, HCONH2, and (CH3)2CHOH.

The aprotic solvents include N(CH3)3, CH3NO2, and CH2Cl2.

An oxygen (O), nitrogen (N), or fluoride atom is bonded to a hydrogen atom in a protic solvent (F). Protic solvents are generally any solvents that have a labile H+.

(CH3) (CH3) Because one of the hydrogens in 2CHOH is linked to oxygen, it is a protic solvent (O)

CH3NO2 is an aprotic (i.e not a protic solvent) solvent because all the hydrogens are bound to carbon.

CH2Cl2 is an aprotic solvent because all the hydrogens are bound  tocarbon.

NH3 is a protic solvent because all the hydrogens are bound to Nitrogen (N)

N(CH3)3 is an aprotic solvent because all the hydrogens are bound to carbon

HCONH2 is a protic solvent because two of the hydrogens are bound to Nitrogen (N)

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complete question:

Classify each solvent as protic or aprotic. a. (CH3)2CHOH c. CH2Cl2 e. N(CH3)3 b. CH3NO2 d. NH3 f. HCONH2

What special equipment did aristotle use to develop and support his atomic model?

Answers

Answer: He thought that all materials on Earth were not made of atoms, but of the four elements, Earth, Fire, Water, and Air.

Explanation: Aristotle did not believe in the atomic theory and he taught so otherwise. He thought that all materials on Earth were not made of atoms, but of the four elements, Earth, Fire, Water, and Air. He believed all substances were made of small amounts of these four elements of matter.

Determine the temperature required for 0. 0470 mol of gas to fill a balloon to 1. 20 l under 0. 998 atm pressure.

Answers

The temperature 311 K is required to fill the balloon.

What would be the temperature of 50g of 20c water mixed with 80g of 40C water?

Answers

A mixture of 50g of 20C water and 80g of 40C water has a temperature of 30C.

T is equal to M1 (50g), M2 (25g), and M1 (25g). T1 : 20C

M2 : 50g. T2 : 40C

final temperature: (50*20+50*40)/50+50 :. (3000)/100 : 30C for M1T1+M2T2/M1+M2.

In chemistry, how do you express temperature?

The ° symbol is typically used to denote temperature measurements in degrees rather than the written word, with a space following the number but not the symbol and the temperature scale: 80 °C was applied to the sample.

What are the benefits of temperature in chemistry?

Chemistry relies heavily on temperature as a factor. It is due to an increase in the material's temperature that a substance transforms from solid to liquid. Increasing the temperature frequently hastens chemical processes.

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What would happen if there was no H+ gradient created in the mitochondrial membrane?

Answers

If protons (H+) were able to freely move across the mitochondrial membrane, cellular respiration will not occur.

Mitochondria are encased in a double-membrane system made up of inner and outer mitochondrial membranes separated by an intermembranous space. The inner membrane has numerous folds (cristae) that extend into the organelle's interior. In the critical process of oxidative phosphorylation, the electrochemical proton gradient across the inner mitochondrial membrane drives ATP synthesis. This is made possible by the previously mentioned membrane-bound enzyme ATP synthase.

The electron transport chain creates a proton gradient across the inner mitochondrial membrane, causing chemiosmosis to drive ATP synthesis. The proton gradient across the cristae membrane is produced by three large membrane protein complexes of the respiratory chain in the cristae, known as complexes I (NADH/ubiquinone oxidoreductase), III (cytochrome c reductase), and IV (cytochrome c reductase) (cytochrome c oxidase).

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for n2 at 298 k, what fraction of molecules has a speed between 200 and 300 m/s?

Answers

For N2 at 298 K, 0.071 fraction of molecules has a speed between 200 and 300 m/s.

Molecular speed is defined as the speed of a group of molecules in an ideal gas. The concept of molecular speed is critical in gas kinetic theory. According to the kinetic theory of gases, the molecules of a gas are constantly moving and follow a straight route until they collide with another molecule.

The speed of molecules in a gas is proportional to temperature and inversely proportional to the molar mass of the gas. In other words, when the temperature of a gas sample rises, the molecules accelerate, and so does the root mean square molecular speed. To determine a molecular speed, multiply three times the gas constant by the temperature, divide by the molar mass, and then square the result.

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How do you know if your business is carbon neutral?

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A business is considered carbon neutral if it has net zero carbon emissions, meaning that it has balanced its GHG emissions with an equivalent amount of GHG reductions or removals.

To determine if a business is carbon neutral, the following steps can be taken:

Measure the business's GHG emissions: The first step is to quantify the business's GHG emissions using a carbon footprint calculator or other relevant software. This will allow the business to understand the sources and levels of its GHG emissions.

Offset remaining emissions: If the business has not already reduced its GHG emissions to zero through internal actions, it can offset its remaining emissions by purchasing carbon credits or supporting projects that remove GHGs from the atmosphere.

Verify and report: The business should have its carbon-neutral status verified by a third party, such as a certification body. It should also report its GHG emissions and carbon offsets publicly, to demonstrate its commitment to sustainability and transparency.

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Consider the reaction A-->B The rate of the reaction is 1.6 x 10^-2 M/s when the concentration of A is 0.11 M. Calculate the rate constant if the reaction is first order in A. (Give units.) Calculate the rate constant if the reaction is second order in A. (Give units.)

Answers

The rate constant of a first-order reaction is 0.145 s⁻¹. The rate constant of the second-order reaction is 1.322  M⁻¹s⁻¹.

What is the rate of the reaction?

The rate of reaction can be demonstrated as the speed at which the products in a chemical reaction are produced from the reactants. Rate gives information on how much time is required for the reaction to be completed.

The rate of reaction can be defined as the speed of a reaction at which reactants are converted into products. Some reactions can be instantaneous, while some take a little longer to achieve the final equilibrium.

Given, the reaction is A → B

Given, the rate of reaction = 1.6 × 10⁻² M/s

The initial concentration of reactant A = 0.11 M

The rate constant of first-order reaction, Rate = k [A]

1.6 × 10⁻² = k ×0.11

k = 0.145 s⁻¹

The rate constant of second-order reaction, Rate = k [A]²

1.6 × 10⁻² = k ×(0.11)²

k' = 1.322  M⁻¹s⁻¹

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Which atoms are in all carbohydrates?

Answers

Carbohydrates require carbon as their primary component. There is carbon in every known carbohydrate. All carbohydrates also contain hydrogen and oxygen atoms, with the exception of a few simple sugars, which only contain carbon and hydrogen atoms.

Carbon, hydrogen, and oxygen atoms make up the macromolecules known as carbohydrates. They are a significant energy source. They can be found in fruits and vegetables as sugars, starches, and fibre. What categories do the carbs fit into? Starchy meals are complex carbohydrates because they include two or more sugar units. Compared to simple carbs, complex carbohydrates' molecules digest and transform more slowly. They are widely distributed in whole-grain bread, cereals, lentils, beans, peanuts, potatoes, peas, and corn. As one of the three primary macronutrients, carbohydrates are one of the three.

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What are the elements at the bottom of the table called?

Answers

Answer:

inner transition elements.

Explanation:

right answer

What would be the freezing point of aqueous solution containing 18 gram of c6 h12 o6 in thousand gram of water?

Answers

The freezing point of aqueous solution containing 18 gram of c6 h12 o6 in thousand gram of water is -1.76°C.

What is aqeous solution?

Aqueous solution is a solution created by dissolving a solid, liquid, or gaseous substance in water. Water is the most common solvent used to create aqueous solutions, and it is universal solvent due to its chemical properties. Aqueous solutions are a common form of solution found in every day life, such as in household cleaners, cooking ingredients, and even medication. Aqueous solutions are incredibly useful and versatile, as they can be easily manipulated with other substances to create various different solutions.

This is because the freezing point depression of a solution is proportional to the amount of solute present. The freezing point depression for a 1 molar solution of glucose is 1.86°C, so the freezing point of a solution containing 18 grams of glucose in 1000 grams of water is calculated as 1.86°C x (18/180) = -1.76°C.

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what number of moles of o2 is needed to produce 14.2 grams of p4o10 from p? (molecular weight p4o10

Answers

0.25 moles of O2 is needed to produce 14.2 grams of P4O10 from P.

In order to calculate the number of moles of O2 needed to produce 14.2 grams of P4O10 from P, we need to use the equation for the reaction:

P + 5O2 → P4O10

We can calculate the number of moles of O2 needed by using the molar mass of P4O10, which is 284 g/mol. First, we need to calculate the number of moles of P4O10 present in 14.2 grams:

14.2 g/ 284 g/mol

= 0.05 mol.

Now, we can use the mole ratio between P and O2 to calculate the number of moles of O2 needed. The mole ratio is 5:1, meaning that for every 5 moles of O2, 1 mole of P is needed. Therefore, to get 0.05 moles of P4O10 from P, we need 0.05 x 5 = 0.25 moles of O2.

In conclusion, 0.25 moles of O2 is needed to produce 14.2 grams of P4O10 from P.

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We can see water change state, from ice to steam. This is a __________ change in matter.

Answers

Physical change in matter

What are the 4 main sectors that contribute to carbon emissions?

Answers

The four main sectors that contribute to carbon emissions are Energy, Industrial Processes, Agriculture, and waste.

Energy: This sector includes the production, distribution, and use of energy from fossil fuels such as coal, oil, and natural gas.Industrial processes: This sector includes the production of goods such as cement, steel, and chemicals, which emit GHGs during the manufacturing process.Agriculture, forestry, and other land use: This sector includes activities such as the cultivation of crops, raising livestock, and the clearing of forests, which can emit GHGs due to the decomposition of organic matter.Waste: This sector includes the collection, treatment, and disposal of waste, which can emit GHGs due to the decomposition of organic matter in landfills.

These four sectors are responsible for the majority of GHG emissions globally. Reducing emissions in these sectors is essential for mitigating climate change and achieving net-zero emissions. This can be done through a variety of measures, such as increasing energy efficiency, transitioning to renewable energy sources, adopting more sustainable land use practices, and reducing waste.

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The table indicates that nitrogen and oxygen are the main components of the atmosphere by volume. Together these two gases make up approximately 99% of the dry atmosphere. Why are these gases important?.

Answers

Answer:

Explanation:

Nitrogen and oxygen are important components of the atmosphere because they are essential for life on Earth.

Nitrogen makes up about 78% of the Earth's atmosphere by volume, and it is an important component of proteins, nucleic acids, and other biomolecules. It is also a vital component of the Earth's nitrogen cycle, which is the process by which nitrogen is converted into various forms and transported through the environment.

Oxygen makes up about 21% of the Earth's atmosphere by volume, and it is essential for respiration and the production of energy in living organisms. It is also a key component of the Earth's carbon cycle, which is the process by which carbon is exchanged between living organisms, the atmosphere, and the Earth's surface.

Together, nitrogen and oxygen play important roles in the functioning of the Earth's ecosystems and the support of life on the planet.

Is 20% NaCl hypertonic?

Answers

20% NaCl is hypertonic.

What is hypertonic solution?

A hypertonic solution is any external solution that has a high solute content and a low water concentration compared to body fluids. In a hypertonic solution, water will often transfer from the body into the solution.

A solution that is hypertonic includes more solute particles (such as salts and other electrolytes) is frequently found in blood plasma and cells. Osmotic pressure of the interior of cell is equals to 0.9 % NaCl solution, which is called physiological saline.

Therefore, 20% NaCl is hypertonic.

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In a control experiment, to validate the amount of HCl neutralized by an antacid, identify the item that would not be present.

Antacid

NaOH

HCl

Phenolphthalein

Answers

In a control experiment, to validate the amount of HCl neutralized by an antacid, at the end of experiment antacid would not be present.

The following net-ionic equation describes how a strong acid and a strong base react together: H₃O⁺(aq) + OH⁻(aq) → 2H₂O(l). The pH of the resulting solution can be calculated from the concentration of the excess reactant if either the acid or the base is in excess. The solution has a pH of 7.00 at 25°C if the acid and base are equimolar.

What is a strong base reaction?

Contrarily, weak bases only partially react with water to form hydroxide ions, whereas strong bases completely react to form the hydroxide ion. A strong acid and strong base react by neutralizing one another, which results in the production of salt and water.

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Suggest one reason why Newlands placed hydrogen in the octave shown

Answers

Answer:

because H (hydrogen) is very reactive with other elements

Explanation:

Because hydrogen is very reactive

Classify These Atoms And Ions As Paramagnetic Or Diamagnetic.

Answers

The atoms and ions that are paramagnetic are [tex]Mn^{2+}[/tex] and Sn and the atoms and ions that are diamagnetic are [tex]Al^{3+}[/tex] and Zn.

What is paramagnetic and diamagnetic?

Paramagnetic ions or atoms are when the ions or atoms have at least one unpaired electron. Diamagnetic ions or atoms are when the atoms or ions don't have any unpaired electrons.

To find if the ions have unpaired electrons or not, we must write electron configuration. So,

For [tex]Mn^{2+}[/tex] electron configuration is [tex][Ar]3d^54s^0[/tex], it is paramagnetic.

For [tex]Al^{3+}[/tex] electron configuration is [tex][He]2s^22p^63s^03p^0[/tex], it is diamagnetic.

For Zn electron configuration is [tex][Ar]3d^{10}4s^2[/tex], it is diamagnetic.

For Sn electron configuration is [tex][Kr]4d^{10}5s^25p^2[/tex], it is paramagnetic.

Your question is incomplete, but most probably your full question was

(image attached)

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A student notices that the Periodic Table has most of the elements with common properties grouped together. This
means that nonmetals tend to be grouped together, metals tend to be found together, and metalloids tend to be
placed together on the table. Which property can be associated with nonmetals, since they are found together on
the Periodic Table?
A Nonmetals tend to be gases or liquids at room temperature and are found on the right side of the
table.
*B
C
D
Nonmetals tend to be on the top of the Periodic Table and are brittle.
Nonmetals tend to be on the bottom half of the Periodic Table and tend to conduct electricity
well.
Nonmetals tend to be shiny and malleable and are found on the left side of the table.

Answers

Answer:

A

Explanation:

"Nonmetals tend to be gases or liquids at room temperature and are found on the right side of the table."

This can be observed using a labelled periodic table.

What force forms ionic bonds?

Answers

Answer: electrostatic force

Explanation:

Oppositely charged particles attract each other. This attractive force is often referred to as an electrostatic force. An ionic bond is the electrostatic force that holds ions together in an ionic compound

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